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首页> 外文期刊>EURASIP journal on advances in signal processing >An Adaptive Channel Estimation Algorithm Using Time-Frequency Polynomial Model for OFDM with Fading Multipath Channels
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An Adaptive Channel Estimation Algorithm Using Time-Frequency Polynomial Model for OFDM with Fading Multipath Channels

机译:基于时频多项式模型的多径衰落OFDM自适应信道估计算法

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Orthogonal frequency division multiplexing (OFDM) is an effective technique for the future 3G communications because of its great immunity to impulse noise and intersymbol interference. The channel estimation is a crucial aspect in the design of OFDM systems. In this work, we propose a channel estimation algorithm based on a time-frequency polynomial model of the fading multipath channels. The algorithm exploits the correlation of the channel responses in both time and frequency domains and hence reduce more noise than the methods using only time or frequency polynomial model. The estimator is also more robust compared to the existing methods based on Fourier transform. The simulation shows that it has more than improvement in terms of mean-squared estimation error under some practical channel conditions. The algorithm needs little prior knowledge about the delay and fading properties of the channel. The algorithm can be implemented recursively and can adjust itself to follow the variation of the channel statistics.
机译:正交频分复用(OFDM)对脉冲噪声和符号间干扰具有很大的抵抗力,因此是未来3G通信的有效技术。信道估计是OFDM系统设计中的关键方面。在这项工作中,我们提出了一种基于衰落多径信道的时频多项式模型的信道估计算法。与仅使用时间或频率多项式模型的方法相比,该算法利用了时域和频域中信道响应的相关性,因此减少了更多的噪声。与基于傅立叶变换的现有方法相比,该估计器也更健壮。仿真表明,在某些实际信道条件下,它在均方估计误差方面有很多改进。该算法几乎不需要有关信道的延迟和衰落特性的先验知识。该算法可以递归实现,并且可以调整自身以遵循信道统计信息的变化。

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